Sundaram Rajivgandhi, Gandhi Surajit, Jonak Claudia, Vasudevan Dileep
Institute of Life Sciences, Bhubaneswar, 751023, India; Manipal Academy of Higher Education, Manipal, 576104, India.
Institute of Life Sciences, Bhubaneswar, 751023, India; Regional Centre for Biotechnology, Faridabad, 121001, India.
Biochimie. 2024 Dec;227(Pt A):248-261. doi: 10.1016/j.biochi.2024.07.018. Epub 2024 Aug 6.
Chromatin structure and dynamics regulate all DNA-templated processes, such as transcription, replication, and repair. Chromatin binding factors, chromatin architectural proteins, and nucleosome remodelers modulate chromatin structure and dynamics and, thereby, the various DNA-dependent processes. Arabidopsis thaliana DEK3, a member of the evolutionarily conserved DEK domain-containing chromatin architectural proteins, is an important factor for chromatin structure and function, involved in transcriptional programming to regulate flowering time and abiotic stress tolerance. AtDEK3 contains an uncharacterized N-terminal domain, a middle SAF domain (winged helix-like domain), and a C-terminal DEK domain, but their role in the interaction of AtDEK3 with histones and DNA remained poorly understood. Using biochemical and biophysical analyses, we provide a comprehensive in vitro characterization of the different AtDEK3 domains for their interaction with histone H3/H4 and DNA. AtDEK3 directly interacts with histone H3/H4 tetramers through its N-terminal domain and the C-terminal DEK domain in a 1:1 stoichiometry. Upon interaction with H3/H4, the unstructured N-terminal domain of AtDEK3 undergoes a conformational change and adopts an alpha-helical conformation. In addition, the in-solution envelope structures of the AtDEK3 domains and their complex with H3/H4 have been characterized. The SAF and DEK domains associate with double-stranded and four-way junction DNA. As DEK3 possesses a histone-interacting domain at the N- and the C-terminus and a DNA-binding domain in the middle and at the C-terminus, the protein might play a complex role as a chromatin remodeler.
染色质结构和动力学调控所有以DNA为模板的过程,如转录、复制和修复。染色质结合因子、染色质结构蛋白和核小体重塑因子调节染色质结构和动力学,进而调控各种依赖DNA的过程。拟南芥DEK3是进化上保守的含DEK结构域的染色质结构蛋白家族成员,是染色质结构和功能的重要因子,参与转录编程以调控开花时间和非生物胁迫耐受性。AtDEK3包含一个功能未知的N端结构域、一个中间的SAF结构域(类翼状螺旋结构域)和一个C端DEK结构域,但它们在AtDEK3与组蛋白和DNA相互作用中的作用仍知之甚少。通过生化和生物物理分析,我们对AtDEK3不同结构域与组蛋白H3/H4和DNA相互作用进行了全面的体外表征。AtDEK3通过其N端结构域和C端DEK结构域以1:1的化学计量比直接与组蛋白H3/H4四聚体相互作用。与H3/H4相互作用时,AtDEK3的无结构N端结构域发生构象变化并采用α-螺旋构象。此外,还对AtDEK3结构域及其与H3/H4复合物的溶液包封结构进行了表征。SAF和DEK结构域与双链和四向连接DNA结合。由于DEK3在N端和C端具有组蛋白相互作用结构域,在中间和C端具有DNA结合结构域,该蛋白可能作为染色质重塑因子发挥复杂作用。